苗波林地树冠异速生长的竞争、降水和温度形状偏离标度规律

IF 1.7 3区 环境科学与生态学 Q3 ECOLOGY
Biotropica Pub Date : 2025-09-08 DOI:10.1111/btp.70093
Arthur M. Yambayamba, Fabian J. Fischer, Tommaso Jucker
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引用次数: 0

摘要

树木高度、树冠半径、树冠深度和茎粗等不同轴之间的尺度关系直接影响森林结构和功能的形成。理论模型,如代谢缩放理论,假设它们是优化的生物力学稳定性和液压液分布。然而,经验数据经常表明,这种模型只能作为一阶近似,因为它们没有考虑到物种特征和树木生长环境条件的差异。然而,绝大多数研究都集中在温带生态系统或热带雨林上,因此我们仍然缺乏对热带干燥森林中树木异速生长的因素的充分了解。在这里,我们收集了来自赞比亚各地miombo林地的树高、直径、树冠半径和深度数据,并使用贝叶斯分层建模框架来探索气候和竞争如何影响异速生长尺度关系。与之前的研究类似,我们的研究结果表明异速缩放关系与理论预期有很大的偏差。我们发现竞争、降水和温度都会影响树冠异速尺度关系,当邻居竞争加剧时,树木变得更纤细,而在温暖湿润的气候下,树冠变得更宽更深。我们的研究强调了miombo林地的结构和功能不仅仅是由水的可用性决定的。此外,通过开发改进的林冠异速生长模型,我们为这些至关重要的干旱森林生态系统的地上生物量估算和遥感产品校准提供了新的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Competition, Precipitation, and Temperature Shape Deviations From Scaling Laws in the Crown Allometries of Miombo Woodlands

Competition, Precipitation, and Temperature Shape Deviations From Scaling Laws in the Crown Allometries of Miombo Woodlands

Scaling relationships between different axes of tree size, such as height, crown radius, crown depth, and stem diameter, play a direct role in shaping forest structure and function. Theoretical models such as metabolic scaling theory postulate that they are optimized for biomechanical stability and hydraulic sap distribution. However, empirical data often show that such models are only good enough as first-order approximations because they do not account for differences in species traits and environmental conditions where trees grow. Nevertheless, the vast majority of research has focused on temperate ecosystems or tropical rainforests, so we continue to lack a full understanding of what factors shape allometries of trees in tropical dry forests. Here, we compile data on tree height, diameter, crown radius, and depth from miombo woodlands across Zambia and use a Bayesian hierarchical modeling framework to explore how allometric scaling relationships are shaped by climate and competition. Similar to previous studies, our results revealed that allometric scaling relationships deviate substantially from theoretical expectations. We found that competition, precipitation, and temperature all affect crown allometric scaling relationships, with trees becoming more slender where neighborhood competition was greater, while crowns were wider and deeper in warmer and wetter climates. Our study highlights how the structure and function of miombo woodlands is shaped by more than just water availability. Moreover, by developing improved crown allometric models for miombo woodlands, we provide new tools to aid the estimation of aboveground biomass and calibration of remote sensing products in these critically important dry forest ecosystems.

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来源期刊
Biotropica
Biotropica 环境科学-生态学
CiteScore
4.10
自引率
9.50%
发文量
122
审稿时长
8-16 weeks
期刊介绍: Ranked by the ISI index, Biotropica is a highly regarded source of original research on the ecology, conservation and management of all tropical ecosystems, and on the evolution, behavior, and population biology of tropical organisms. Published on behalf of the Association of Tropical Biology and Conservation, the journal''s Special Issues and Special Sections quickly become indispensable references for researchers in the field. Biotropica publishes timely Papers, Reviews, Commentaries, and Insights. Commentaries generate thought-provoking ideas that frequently initiate fruitful debate and discussion, while Reviews provide authoritative and analytical overviews of topics of current conservation or ecological importance. The newly instituted category Insights replaces Short Communications.
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